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Batch sterilization

Batch sterilization . Most nutrient media are presently sterilized in batch volumes in the bioreactor at 121°C. Approximate sterilization times can be calculatee from the nature of the medium and the size.

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Batch sterilization

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  1. Batch sterilization • Most nutrient media are presently sterilized in batch volumes in the bioreactor at 121°C. • Approximate sterilization times can be calculatee from the nature of the medium and the size

  2. Not only the nutrient media, but also the fittings, valves and electrodes of the fer-menter itself must be sterilized. Therefore, actual sterilization times are significantly longer than calculated ones and must be empirically deter-mined for the specific nutrient solutions in thefermenter. ·One method of sterilization is to injecting n into the fermenter mantle or interior coils red sterilization. ·Another method is to inject steam into the nutrient solution itself. With direct steam injection, condensate accumulates in the fermenter and the volume of liquid increases during the sterilization process.

  3. Another method is to inject steam into the nutrient solution itself. With direct steam injection, condensate accumulates in the fermenter and the volume of liquid increases during the sterilization process.

  4. It takes 2-3 s to reach the sterilization temperature of 1210C. depending on the steam conduction and enter size. Once the proper temperature has , reached, another 20-60 minutes are required for the actual killing process, followed by cooling for about one hour.

  5. Another disadvantage of heat sterilization (and from the standpoint of microbiology the most significant shortcoming) is that heating, sterilization and cooling phases not only kill microorganisms but also se-verely alter nutrient solutions. Discoloration and changes in the pH value result from caramelization and Maillard reactions. Vitamins are destroyed and the quality of the culture medium deteriorates. The extent to which the subsequent fermentation is affected depends on the organism and the process.

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